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Cost Optimization Of Three-dimensional Beamless Reinforced Concrete Shear-wall Systems Via Genetic Algorithm

机译:基于遗传算法的三维无梁钢筋混凝土剪力墙系统成本优化

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In this present work, a cost optimization has been done for r/c structural system by genetic algorithm method. In the optimization problem the shear-wall dimensions has been considered as design variables and it has been aimed at searching the optimum shear-wall dimensions that minimize total material cost of shear-wall. The constraints of structural optimization problem are constructed according to the requirements of the r/c specification so-called as "TS 500" and the seismic code of Turkey which is put into effect on 1998. The standard structural design procedure requires the predetermination of the dimensions of load carrying members that is generally based on designer's engineering skill, experience and intuition. In practical design applications, final dimensions are generally selected as one of the most suitable ones among numerous design selections that satisfy the regulations. However, the most of these design alternatives may not be economical, and the most economical design could only be provided by a more elaborated optimization procedure. A computer program is also developed for determining the optimum shear-wall dimensions for the minimum cost design of structural systems. The proposed algorithm minimizes structural cost including the cost of concrete and the reinforcement, wherein the costs related to transportation, workmanship and formwork prices are not included. An 13 story and beamless shear-wall system is presented as a numerical example.
机译:在目前的工作中,已经通过遗传算法对R / C结构系统进行了成本优化。在优化问题中,剪力墙的尺寸已被视为设计变量,其目的是寻找使剪力墙的总材料成本最小化的最佳剪力墙尺寸。结构优化问题的约束条件是根据r / c规范(称为“ TS 500”)的要求以及1998年生效的土耳其地震规范来构造的。标准结构设计程序要求对结构优化问题进行预先确定。承重构件的尺寸通常基于设计师的工程技术,经验和直觉。在实际的设计应用中,最终尺寸通常被选为满足规定的众多设计选择中最合适的尺寸之一。但是,这些设计方案中的大多数可能都不经济,并且只能通过更详细的优化程序来提供最经济的设计。还开发了一种计算机程序,用于确定结构系统的最低成本设计的最佳剪力墙尺寸。所提出的算法使包括混凝土和钢筋的成本在内的结构成本最小化,其中不包括与运输,工艺和模板价格有关的成本。数值示例显示了一个13层无梁剪力墙系统。

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